乳酸菌对产肠毒素大肠杆菌在分离猪肠细胞上附着的影响。

R J Spencer, A Chesson
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引用次数: 115

摘要

从断奶仔猪胃肠道中分离到43株乳酸菌。在固体培养基上培养的分离株,根据附着在分离的猪肠细胞上的数量,被分配到强粘附组或非/弱粘附组。在强贴壁菌株和乳酸杆菌中,发酵乳杆菌的比例不成比例。嗜酸菌和乳酸杆菌。在非/弱粘附组中出现唾液。乳酸菌在琼脂培养基上的附着能力明显优于肉汤培养基。在排除(先加入乳酸菌后加入大肠杆菌)、竞争(同时加入乳酸菌和大肠杆菌)和置换(先加入大肠杆菌后加入大肠杆菌)条件下,未发现强黏附菌株对产肠毒素大肠杆菌对猪肠细胞的附着有影响。用[14C]标记的大肠杆菌进行试验。细菌和肠细胞悬浮液通过筛选的过滤器,以保留肠细胞,但通过游离的细菌细胞。从增溶后的过滤器中获得的计数(dpm)作为大肠杆菌附着的测量。一些乳酸菌菌株与带有K88菌毛的产肠毒素大肠杆菌聚集,但不与K88阴性突变株聚集。这些被排除在竞争排斥实验之外。在明显对大肠杆菌与宿主组织的关联没有直接影响的情况下,通过聚集去除潜在的肠道病原体可能有助于乳酸菌的益生菌特性。
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The effect of Lactobacillus spp. on the attachment of enterotoxigenic Escherichia coli to isolated porcine enterocytes.

A total of 43 strains of lactobacilli were isolated from the gastrointestinal tract of piglets at the time of weaning. Isolates, grown on solid media, were allocated to strongly adherent or non/weakly adherent groups on the basis of numbers attaching to isolated porcine enterocytes. Strains of Lactobacillus fermentum were disproportionally represented amongst the strongly-adherent strains and Lact. acidophilus and Lact. salivarius amongst the non/weakly-adherent group. Lactobacilli showed significantly better attachment ability when grown on agar than when grown in broth culture. Strongly adherent strains were not found to effect the attachment of enterotoxigenic Escherichia coli to porcine enterocytes, tested under the conditions of exclusion (lactobacilli added to the enterocytes before E. coli), competition (lactobacilli and E. coli added simultaneously) and displacement (E. coli added before lactobacilli). Tests were made with [14C]-labelled E. coli. Suspensions of bacteria and enterocytes were passed through a filter selected to retain enterocytes but pass free bacterial cells. Counts (dpm) obtained from filters after solubilization were taken as a measure of E. coli attachment. Some strains of lactobacilli coaggregated with enterotoxigenic E. coli with K88 fimbriae, but not with a K88-negative mutants strain. These were excluded from the competitive exclusion experiments. In the apparent absence of a direct effect on the association of E. coli with host tissue, removal of potential gut pathogens by aggregation could contribute to the probiotic properties ascribed to lactic acid bacteria.

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